CS3691 EMBBEDED SYSTEMS AND IOT
III YEAR / 06 SEMESTER
PREPARED BY
Mrs.J. JENIFER, M.E., AP
VERIFIED BY
HOD PRINCIPAL DIRECTOR / MD
DEPARTMENT OF COMPUTER SCIENCE ENGINEERING
DR.NAVALAR NEDUNCHEZHIYAN COLLEGE OF ENGINEERING – THOLUDUR
UNDERTAKEN BY SENGUNTHAR TRUST - TIRUCHENGODE
ANNA UNIVERSITY, CHENNAI
NON- AUTONOMOUS AFFILIATED COLLEGES
REGULATIONS 2021
B. E. COMPUTER SCIENCE ENGINEERING
CHOICE BASED CREDIT SYSTEM
SEMESTER VI
PERIODS TOTAL
S. COURSE CATE
COURSE TITLE PER WEEK CONTACT CREDITS
NO. CODE GORY
L T P PERIODS
THEORY
1. Object Oriented Software
CCS356 PCC 3 0 2 5 4
Engineering
2. CS3691 Embedded Systems and IoT PCC 3 0 2 5 4
3. Open Elective – I* OEC 3 0 0 3 3
4. Professional Elective III PEC - - - - 3
5. Professional Elective IV PEC - - - - 3
6. Professional Elective V PEC - - - - 3
7. Professional Elective VI PEC - - - - 3
8. Non-credit
Mandatory Course-II & MC 3 0 0 3
course
9. NCC Credit Course Level 3# 3 0 0 3 3#
TOTAL - - - - 23
*Open Elective – I Shall be chosen from the list of open electives offered by other
Programmes
&
Mandatory Course-II is a Non-credit Course (Student shall select one course from the
list given under Mandatory Course-II)
#
NCC Credit Course level 3 is offered for NCC students only. The grades earned by the
students will be recorded in the Mark Sheet, however the same shall not be considered
for the computation of CGPA
CS3691 EMBEDDED SYSTEMS AND IOT L T P C
3 0 2 4
COURSE OBJECTIVES:
To learn the internal architecture and programming of an embedded processor.
To introduce interfacing I/O devices to the processor.
To introduce the evolution of the Internet of Things (IoT).
To build a small low-cost embedded and IoT system using
Arduino/Raspberry Pi/ open platform.
To apply the concept of Internet of Things in real world scenario.
UNIT I 8-BIT EMBEDDED PROCESSOR 9
8-Bit Microcontroller – Architecture – Instruction Set and Programming –
Programming Parallel Ports – Timers and Serial Port – Interrupt Handling.
UNIT II EMBEDDED C PROGRAMMING 9
Memory And I/O Devices Interfacing – Programming Embedded Systems in C –
Need For RTOS – Multiple Tasks and Processes – Context Switching – Priority
Based Scheduling Policies.
UNIT III IOT AND ARDUINO PROGRAMMING 9
Introduction to the Concept of IoT Devices – IoT Devices Versus
Computers – IoT Configurations – Basic Components – Introduction to Arduino
– Types of Arduino – Arduino Toolchain – Arduino Programming Structure –
Sketches – Pins – Input/Output From Pins Using Sketches – Introduction to
Arduino Shields – Integration of Sensors and Actuators with Arduino.
UNIT IV IOT COMMUNICATION AND OPEN PLATFORMS 9
IoT Communication Models and APIs – IoT Communication Protocols –
Bluetooth – WiFi – ZigBee – GPS – GSM modules – Open Platform (like
Raspberry Pi) – Architecture – Programming – Interfacing – Accessing GPIO
Pins – Sending and Receiving Signals Using GPIO Pins – Connecting to the
Cloud.
UNIT V APPLICATIONS DEVELOPMENT 9
Complete Design of Embedded Systems – Development of IoT Applications –
Home Automation – Smart Agriculture – Smart Cities – Smart Healthcare.
45 PERIODS
PRACTICAL EXERCISES 30 PERIODS
1. Write 8051 Assembly Language experiments using simulator.
2. Test data transfer between registers and memory.
3. Perform ALU operations.
4. Write Basic and arithmetic Programs Using Embedded C.
5. Introduction to Arduino platform and programming
6. Explore different communication methods with IoT devices (Zigbee, GSM, Bluetooth)
7. Introduction to Raspberry PI platform and python programming
8. Interfacing sensors with Raspberry PI
9. Communicate between Arduino and Raspberry PI using any wireless medium
10. Setup a cloud platform to log the data
11. Log Data using Raspberry PI and upload to the cloud platform
12. Design an IOT based system
TOTAL: 75 PERIODS
COURSE OUTCOMES:
CO1: Explain the architecture of embedded processors.
CO2: Write embedded C programs.
CO3: Design simple embedded applications.
CO4: Compare the communication models in IOT
CO5: Design IoT applications using Arduino/Raspberry Pi /open platform.
TEXTBOOKS :
1. Muhammed Ali Mazidi, Janice Gillispie Mazidi, Rolin D. McKinlay, “The 8051
Microcontroller and Embedded Systems”, Pearson Education, Second Edition,
2014
2. Robert Barton, Patrick Grossetete, David Hanes, Jerome Henry, Gonzalo
Salgueiro, “IoT Fundamentals: Networking Technologies, Protocols, and Use
Cases for the Internet of Things”, CISCO Press, 2017.
REFERENCES :
1. Michael J. Pont, “Embedded C”, Pearson Education, 2007.
2. Wayne Wolf, “Computers as Components: Principles of Embedded
Computer System Design”, Elsevier, 2006.
3. Andrew N Sloss, D. Symes, C. Wright, “Arm System Developer's Guide”,
Morgan Kauffman/ Elsevier, 2006.
4. Arshdeep Bahga, Vijay Madisetti, “Internet of Things – A hands-on approach”,
Universities Press, 2015
CO’s-PO’s & PSO’s MAPPING
CO’s PO’s PSO’s
1 2 3 4 5 6 7 8 9 10 11 12 1 2 3
1 3 3 3 3 - - - - 1 2 3 3 2 1 3
2 2 1 3 2 2 - - - 1 2 2 3 3 1 3
3 3 1 3 3 1 - - - 1 2 1 1 1 3 3
4 3 2 3 2 1 - - - 1 2 2 3 2 2 1
5 2 3 3 2 2 - - - 1 3 3 2 3 1 3
AVg. 2.6 2 3 2.4 1.5 - - - 1 2.2 2.2 2.4 2.2 1.6 2.6
1 - low, 2 - medium, 3 - high, ‘-“- no correlation
LECTURE PLAN
SUBJECT CODE : CS3691
SUBJECT NAME : EMBEDDED SYSTEMS AND IOT
NAME OF THE FACULTY : Mrs. J. JENIFER
DESIGNATION : ASSISTANT PROFESSOR
COURSE : VI SEMESTER - B.E CSE
ACADEMIC YEAR : 2024-2025
ECOMMENDED TEXT BOOKS/REFERENCE
S.NO. TITLE OF THE BOOK AUTHOR REFERENCE
Muhammed Ali Mazidi, Janice
1 The 8051 Microcontroller and Gillispie Mazidi, Rolin D. T1
Embedded Systems McKinlayy
IoT Fundamentals: Networking Robert Barton, Patrick
Technologies, Protocols, and Grossetete, David Hanes,
2 T2
Use Cases for the Internet of Jerome Henry, Gonzalo
Things Salgueiro
3 Embedded C Michael J. Pont R1
Computers as Components:
4 Wayne Wolf R2
Principles of Embedded
Computer System Design
Andrew N Sloss, D. Symes,
5 R3
C. Wright
Arm System Developer's Guide
Arshdeep Bahga, Vijay
6 Internet of Things – A hands- R4
Madisetti
on approach